首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Numerical simulation of the effects of buoyancy forces and flow control devices on fluid flow and heat transfer phenomena of liquid steel in a tundish
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Numerical simulation of the effects of buoyancy forces and flow control devices on fluid flow and heat transfer phenomena of liquid steel in a tundish

机译:中间包中浮力和流量控制装置对钢液流动和传热现象影响的数值模拟

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Fluid flow and heat transfer of liquid steel in a tundish of a continuous slab easter was numerically simulated. The importance of natural flow convection was established through a dimensionless number given by the ratio Gr/Re-2. Buoyancy forces proved to be as important as inertial ones, especially in the extremes of the tundish far from the entering liquid jet. The usual flow control devices like weirs and dams were not as effective as turbulence inhibitors, a kind of impact pad with lips, interior squared angles, and a square cross section. The simulations indicated that this device helps to decrease fluid turbulence in the zone of the entering liquid jet and has damping effects of step inputs of cold or hot steel, allowing for better control of the casting temperature. [References: 13]
机译:对连续板坯中间包中钢液的流动和传热进行了数值模拟。自然流动对流的重要性通过比率Gr / Re-2给出的无因次数确定。浮力被证明与惯性力同样重要,特别是在中间包的极端位置,而不是进入液体射流。常见的流量控制装置(如堰和坝)不如湍流抑制器,一种带唇的冲击垫,内部平方角和方形横截面那样有效。仿真表明,该装置有助于减少进入液体射流区域的流体湍流,并具有冷或热钢阶梯输入的阻尼作用,从而可以更好地控制铸造温度。 [参考:13]

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